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HERO ID
8038616
Reference Type
Journal Article
Title
Using the C/N ratio to estimate terrigenous inputs of organic matter to aquatic environments
Author(s)
Perdue, EM; Koprivnjak, JF
Year
2007
Is Peer Reviewed?
Yes
Journal
Estuarine, Coastal and Shelf Science
ISSN:
0272-7714
EISSN:
1096-0015
Volume
73
Issue
1-2
Page Numbers
65-72
DOI
10.1016/j.ecss.2006.12.021
Web of Science Id
WOS:000246912800007
Abstract
Organic matter in the water columns and sediments of rivers, lakes, estuaries, and oceans is often described as a binary mixture of terrestrial and aquatic end members. Molar ON ratios of samples and end members are often used in linear mixing equations to estimate the fraction of terrestrially derived organic carbon (or organic matter) in aquatic and sedimentary environments. It is shown herein that this calculation actually yields the fraction of terrestrially derived organic nitrogen. Because terrestrial organic matter is relatively depleted in nitrogen, the fraction of terrestrially derived organic carbon has been seriously and systematically underestimated by this misinterpretation of C/N mixing lines. It is further shown that the mixing equation based on N/C yields the desired result - the fraction of terrestrially derived organic carbon. More generally, whenever ratios of properties, e.g., C/N, N/C, C-13/C-12, etc., are used in linear mixing equations, the mixing fraction is always based on the denominator of the ratio rather than the numerator. The degree to which the fraction of terrestrially derived carbon is underestimated through the use of C/N mixing lines is evaluated for a range of CIN ratios of samples and end members. The problem is further illustrated using several published data sets in which C/N mixing lines were origirtally used to estimate the average fraction of terrestrially derived carbon. Re-calculation using N/C mixing lines raised the estimated average fraction of terrestrially derived carbon from 0.48 to 0.64. (C) 2007 Elsevier Ltd. All rights reserved.
Keywords
organic carbon; C/N mixing ratio; terrigenous; marine; sediments; aquatic environment
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